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作为在斑马鱼中评估的口服疫苗的气单胞菌溶素突变体表达的组合物。

composition expressed aerolysin mutant of as an oral vaccine evaluated in zebrafish ().

作者信息

Yao Yuan-Yuan, Zhang Qing-Shuang, Liu Shu-Bin, Yang Hong-Wei, Chen Xing-Yu, Yang Ya-Lin, Gao Chen-Chen, Ran Chao, Teame Tsegay, Zhang Zhen, Zhou Zhi-Gang

机构信息

Key Laboratory for Feed Biotechnology of the Ministry of Agriculture, Institute of Feed Research of Chinese Academy of Agricultural Sciences, Beijing, 100081 China.

Sino-Norway Fish Gastrointestinal Microbiota Joint Lab, Institute of Feed Research of Chinese Academy of Agricultural Sciences, Beijing, 100081 China.

出版信息

Mar Life Sci Technol. 2024 Aug 20;6(3):475-487. doi: 10.1007/s42995-024-00239-9. eCollection 2024 Aug.

Abstract

Vaccines are one of the most practical means to stop the spreading of in aquaculture. In this study, virulence factor aerolysin mutant NTaer which has lost its hemolytic activity was used as a target antigen. constitutive secretory expression NTaer (GS115-NTaer) was used as a potential safe oral vaccine to evaluate its effectiveness on zebrafish immunity. The result shows that vaccination of GS115- NTaer for four weeks did not affect the growth performance of the host, while eliciting an effective immune protective response. Compared with the control group, the GS115-NTaer could significantly up-regulate the relative expression level of the intestinal tight junction protein 1α () gene, and significantly increased the contents of lysozyme (LYZ), complement C3 and C4 in the gut, indicating that the innate immune response of the fish was activated. The relative gene expression levels of macrophage-expressed gene 1 () and T cell receptor () in the gut, and , , , , and in the spleen were all increased significantly, indicating that the cellular immune response of the fish was activated. Furthermore, the contents of serum IgM and intestinal mucosa IgZ antibodies were significantly increased, which showed that humoral immunity was also activated. Moreover, inoculation with GS115-NTaer significantly changed the structure of gut microbiota. In particular, the relative ratio of (Firmicutes + Fusobacteriota + Bacteroidota)/Proteobacteria was significantly higher than that of the control and GS115 groups. Lastly, the vaccinated fish were challenged with and the relative percent survival of GS115 and the GS115-NTear groups was 14.28% and 33.43%. This improvement of immunity was not only due to the specific immune response but also attributed to the improvement of innate immunity and the gut microbiota which was demonstrated by the germ-free zebrafish model. Collectively, this study provides information on the effectiveness of GS115-NTear as an oral vaccine for the green prevention and control of infection in fish aquaculture.

摘要

疫苗是阻止水产养殖中疾病传播的最实用手段之一。在本研究中,已失去溶血活性的毒力因子气溶素突变体NTaer被用作靶抗原。组成型分泌表达NTaer(GS115-NTaer)被用作一种潜在的安全口服疫苗,以评估其对斑马鱼免疫的有效性。结果表明,连续四周接种GS115-NTaer不会影响宿主的生长性能,同时引发有效的免疫保护反应。与对照组相比,GS115-NTaer可显著上调肠道紧密连接蛋白1α( )基因的相对表达水平,并显著增加肠道中溶菌酶(LYZ)、补体C3和C4的含量,表明鱼的先天免疫反应被激活。肠道中巨噬细胞表达基因1( )和T细胞受体( )以及脾脏中 、 、 、 、 和 的相对基因表达水平均显著升高,表明鱼的细胞免疫反应被激活。此外,血清IgM和肠道黏膜IgZ抗体的含量显著增加,表明体液免疫也被激活。此外,接种GS115-NTaer显著改变了肠道微生物群的结构。特别是,厚壁菌门+梭杆菌门+拟杆菌门/变形菌门的相对比例显著高于对照组和GS115组。最后,对接种疫苗的鱼用 进行攻毒,GS115组和GS115-NTear组的相对存活率分别为14.28%和33.43%。这种免疫改善不仅归因于特异性免疫反应,还归因于先天免疫和肠道微生物群的改善,无菌斑马鱼模型证明了这一点。总体而言,本研究提供了关于GS115-NTear作为口服疫苗对水产养殖中鱼类 感染进行绿色防控有效性的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a8c/11358560/06eb754b8860/42995_2024_239_Fig1_HTML.jpg

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